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首页> 外文期刊>Acta biomaterialia >Full-field bulge test for planar anisotropic tissues: Part II-A thin shell method for determining material parameters and comparison of two distributed fiber modeling approaches
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Full-field bulge test for planar anisotropic tissues: Part II-A thin shell method for determining material parameters and comparison of two distributed fiber modeling approaches

机译:平面各向异性组织的全场凸出试验:第II部分-确定材料参数的薄壳方法和两种分布式纤维建模方法的比较

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摘要

A thin shell method is presented to analyze the results of the bulge test presented in Part I of this paper. The method accounts for the effects of bending, which can be significant for thick tissues inflated from a planar state. We fit two commonly used hyperelastic distributed fiber constitutive models to the stretch-stress resultant data for human skin tissue calculated in Part I from the measured inflation pressure and deformed geometry of the tissue. To validate the method, the resulting parameters were implemented in a specimen-specific finite-element analysis. The method was capable of reproducing the experimentally measured pressure-stretch response of the tissue for a fully integrated distributed fiber model, but not for the pre-integrated distributed fiber models. The parameters obtained for the pre-integrated models significantly underestimated the anisotropic properties of the tissue. The thin shell method presented in this work has been applied to human skin tissues but is sufficiently general to be applied to analyze the inflation response of other planar tissues.
机译:提出了一种薄壳方法来分析本文第一部分中提出的凸起测试的结果。该方法考虑了弯曲的影响,这对于从平面状态膨胀的厚组织可能很重要。我们将两个常用的超弹性分布纤维本构模型拟合到第一部分中根据测量的膨胀压力和组织变形的几何形状计算得出的人体皮肤组织的拉伸应力结果数据。为了验证该方法,在特定于样本的有限元分析中实施了得到的参数。对于完全集成的分布式纤维模型,该方法能够再现组织的实验测量的压力-拉伸响应,而对于预集成的分布式纤维模型,则无法。从预集成模型获得的参数大大低估了组织的各向异性。这项工作中介绍的薄壳方法已应用于人体皮肤组织,但具有足够的通用性,可用于分析其他平面组织的膨胀反应。

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